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Highly efficient biodegradation of reactive blue 19 under the activation of tea residue by a newly screened mixed bacterial flora DDMY2

机译:通过新筛选的混合细菌菌群DDMY2在茶残留物激活下高效的活性蓝19生物降解

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In this study, a newly screened mixed bacterial flora DDMY2 had high decolorization capacity for anthraquinone dye reactive blue 19 (RB19) and the decolorization efficiency of 300 mg L-1 RB19 could reach up to 98% within 48 h in the presence of tea residue. Results indicated that RB19 could be efficiently decolorized by flora DDMY2 in wide ranges of pH values (5.0-9.0), temperatures (30-40 degrees C) and initial dye concentrations (50-500 mg L-1) under the activation of tea residue. Concentration of tea residue had been proved to significantly impact the decolorization performance. UV-vis spectrophotometry, Fourier transform infrared spectrometry and liquid chromatography/time-of-flight/mass spectrometry analysis showed three identified degradation products and the possible degradation pathway of RB19 was speculated. High-throughput sequencing analysis revealed the community structures of bacterial flora before and after domestication by tea residue. Based on the result, it was inferred that unclassified_o_Pseudomonadales, Brevibacillus, Stenotrophomonas and Bordetella activated by tea residue were responsible for the excellent decolorization performance. Results of this research deepen our understanding of the biodegradation process of anthraquinone dyes by bacterial flora and broaden the knowledge of utilizing tea residue as a bioactivator in biological treatment.
机译:在这项研究中,一个新筛选混合的细菌菌群DDMY2有蒽醌高脱色能力染料活性蓝19(RB19)和300毫克的脱色效率L-1 RB19可以在茶残基的存在48小时内达到高达98% 。结果表明,RB19可以有效地被植物在DDMY2的pH值的宽范围(5.0-9.0),温度(30-40度C)和初始染料浓度脱色(50-500毫克L-1)的茶叶渣的激活下。茶叶渣的浓度已经证明显著影响脱色性能。 UV-Vis分光光度法,傅里叶变换红外光谱法和液相色谱法/时间飞行/质谱分析表明3种识别的降解产物和RB19的可能降解途径推测。高通量测序分析表明菌群的社区结构之前和茶叶渣后驯化。根据这个结果,有人推断unclassified_o_Pseudomonadales,短短芽孢,嗜和波氏杆菌激活的茶叶渣负责出色的脱色性能。该研究成果加深我们的菌群蒽醌染料的降解过程的了解,扩大利用茶叶渣作为生物治疗生物活性物质的知识。

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    《RSC Advances》 |2019年第43期|共11页
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  • 正文语种 eng
  • 中图分类 化学;
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